R Chang, X Wu, O Cheung, W Liu - Journal of Materials Chemistry A, 2022 - pubs.rsc.org
Carbon capture is an important and effective approach to control the emission of CO2 from point sources such as fossil fuel power plants, industrial furnaces and cement plants into the …
Thermochemical energy storage (TCS) systems are receiving increasing research interest as a potential alternative to molten salts in concentrating solar power (CSP) plants. In this …
The calcium looping (CaL) process is a promising CO2 capture technology, which uses CaO- based sorbents by employing a reversible reaction between CaO and CO2, generally …
CO 2 capture and utilisation (CCU) is a promising strategy to effectively mitigate the adverse greenhouse effects caused by CO 2 emissions at an industrial scale. Through a process …
Porous carbons have spurred tremendous interest as cutting-edge materials for diverse energy and environmental applications. To this end, hard and soft templating routes have …
X Li, K Zhao, Z Li, X Li, K Peng - Journal of Cleaner Production, 2024 - Elsevier
Calcium looping (CaL) process relying on CaO as high-temperature CO 2 sorbents is a prospective alternative technology for simultaneously cyclic CO 2 capture and …
Carbon capture and utilization/storage is an integral part of a smooth transition to a net‐zero energy portfolio. The distinctive advantages of the calcium looping (CaL) process, including …
CO 2 is one of the major anthropogenic greenhouse gases in the atmosphere contributing to global warming (Blamey et al., 2010; Mikkelsen et al., 2010). In the last half-century, the …
Carbon dioxide capture and storage technologies are short to mid‐term solutions to reduce anthropogenic CO2 emissions. CaO‐based sorbents have emerged as a viable class of cost …